Literature DB >> 30316701

Neurobehavioral and oxidative stress alterations following methylmercury and retinyl palmitate co-administration in pregnant and lactating rats and their offspring.

Pedro Espitia-Pérez1, Suelen Marin Albino2, Lyda Espitia-Pérez3, Hugo Brango4, Helen da Rosa5, Alexandre Kleber Silveira6, Diogo Pompéu Moraes7, Camila Cerveira8, Moara Mingori9, Camila Tiefensee Ribeiro10, Daniel Pens Gelain11, Carlos Eduardo Schnorr12, José Cláudio Fonseca Moreira13.   

Abstract

Fish consumption and ubiquitous methylmercury (MeHg) exposure represent a public health problem globally. Micronutrients presented in fish affects MeHg uptake/distribution. Vitamin A (VitA), another fish micronutrient is used in nutritional supplementation, especially during pregnancy. However, there is no information about the health effects arising from their combined exposure. The present study aimed to examine the effects of both MeHg and retinyl palmitate administered to pregnant and lactating rats. Thirty Wistar female rats were orally supplemented with MeHg (0,5 mg/Kg/day) and retinyl palmitate (7500 μg RAE1/Kg/day), either individually or in combination from the gestational day 0 to weaning. In dams, maternal behavior was scored. In neonatal and infant offspring, associative learning and neurodevelopment were evaluated. Further periadolescent male and female pups were assessed for open field, habituation and object recognition using episodic-like memory paradigm. Maternal and offspring redox parameters were evaluated. Our results showed no effects of MeHg-VitA co-administration in the quality of maternal care but showed subtle alterations in the pro-oxidant response of the hippocampus. In offspring, MeHg-VitA co-exposure affected early associative learning in neonatal pups, with no further modifications in neurodevelopment, and no locomotor or exploratory alterations in later developmental stages. Habituation was altered in a sex-dependent manner, but no overall memory disturbances were encountered. Finally, MeHg-VitA co-administration reduced lipoperoxidation in male offspring hippocampus. In conclusion, VitA co-administration in dams, under our exposure protocol, can counteract the deleterious neurodevelopmental effects solely attributed to low-dose MeHg in a tissue-specific mechanism, suggesting a protective effect of VitA against MeHg-induced oxidative damage in the central nervous system, especially in the offspring. Further work is needed to confirm our findings and elucidate the molecular mechanisms of MeHg-VitA modulation. Pre-clinical assays are necessary to demonstrate the potential therapeutical use of VitA in populations directly or indirectly exposed to MeHg.
Copyright © 2018 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Behavior; Co-exposure; Methylmercury; Oxidative stress; Pregnancy; Retinyl palmitate

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Year:  2018        PMID: 30316701     DOI: 10.1016/j.neuro.2018.10.004

Source DB:  PubMed          Journal:  Neurotoxicology        ISSN: 0161-813X            Impact factor:   4.294


  3 in total

Review 1.  Canadian Arctic Contaminants and Their Effects on the Maternal Brain and Behaviour: A Scoping Review of the Animal Literature.

Authors:  Claire Fong-McMaster; Sandra Konji; Amanda Nitschke; Anne Tm Konkle
Journal:  Int J Environ Res Public Health       Date:  2020-02-02       Impact factor: 3.390

2.  Methylmercury Impact on Adult Neurogenesis: Is the Worst Yet to Come From Recent Brazilian Environmental Disasters?

Authors:  Ramon da Silva Raposo; Daniel Vieira Pinto; Ricardo Moreira; Ronaldo Pereira Dias; Carlos Alberto Fontes Ribeiro; Reinaldo Barreto Oriá; João Oliveira Malva
Journal:  Front Aging Neurosci       Date:  2020-11-23       Impact factor: 5.750

3.  Methylmercury exposure during prenatal and postnatal neurodevelopment promotes oxidative stress associated with motor and cognitive damages in rats: an environmental-experimental toxicology study.

Authors:  Beatriz Helena Fernandes Fagundes; Priscila Cunha Nascimento; Walessa Alana Bragança Aragão; Victória Santos Chemelo; Leonardo Oliveira Bittencourt; Luciana Eiró-Quirino; Marcia Cristina Freitas Silva; Marco Aurelio M Freire; Luanna Melo Pereira Fernandes; Cristiane do Socorro Ferraz Maia; Maria Elena Crespo-Lopez; Rafael Rodrigues Lima
Journal:  Toxicol Rep       Date:  2022-02-26
  3 in total

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